Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Somatic Gene Transfer of Human ApoA-I Inhibits Atherosclerosis Progression in Mouse Models

View through CrossRef
Background —Apolipoprotein (apo) A-I is the major component of HDL, and it displays antiatherogenic properties. Methods and Results —The human apoA-I gene has been transferred into different mouse models by use of a recombinant adenovirus under the control of an RSV-LTR promoter (AV RSV apoA-I). Administration of AV RSV apoA-I to C57BL/6 mice resulted in moderate expression of human apoA-I for 3 weeks, leading to a transient elevation (40% at day 11 after injection) of HDL cholesterol concentration. In contrast, administration of AV RSV apoA-I to human apoA-I–transgenic mice induced a large increase of human apoA-I and HDL cholesterol concentrations (300% and 360%, respectively, at day 14 after injection) for 10 weeks, indicating that an immune response to the transgene was one major hurdle for long-term duration of expression. Recombinant adenovirus expressing human apolipoprotein A-I (AV RSV apoA-I) was also injected into human apoA-I–transgenic/apoE-deficient mice, which are prone to develop atherosclerosis. Over a 6-week period, overexpression of human apoA-I inhibited fatty streak lesion formation by 56% in comparison with control. Conclusions —Somatic gene transfer of human apoA-I prevents the development of atherosclerosis in the mouse model.
Title: Somatic Gene Transfer of Human ApoA-I Inhibits Atherosclerosis Progression in Mouse Models
Description:
Background —Apolipoprotein (apo) A-I is the major component of HDL, and it displays antiatherogenic properties.
Methods and Results —The human apoA-I gene has been transferred into different mouse models by use of a recombinant adenovirus under the control of an RSV-LTR promoter (AV RSV apoA-I).
Administration of AV RSV apoA-I to C57BL/6 mice resulted in moderate expression of human apoA-I for 3 weeks, leading to a transient elevation (40% at day 11 after injection) of HDL cholesterol concentration.
In contrast, administration of AV RSV apoA-I to human apoA-I–transgenic mice induced a large increase of human apoA-I and HDL cholesterol concentrations (300% and 360%, respectively, at day 14 after injection) for 10 weeks, indicating that an immune response to the transgene was one major hurdle for long-term duration of expression.
Recombinant adenovirus expressing human apolipoprotein A-I (AV RSV apoA-I) was also injected into human apoA-I–transgenic/apoE-deficient mice, which are prone to develop atherosclerosis.
Over a 6-week period, overexpression of human apoA-I inhibited fatty streak lesion formation by 56% in comparison with control.
Conclusions —Somatic gene transfer of human apoA-I prevents the development of atherosclerosis in the mouse model.

Related Results

Abstract 579: Anti-apolipoprotein A-I Antibody Profile Correlates With Cardiovascular Disease Outcomes
Abstract 579: Anti-apolipoprotein A-I Antibody Profile Correlates With Cardiovascular Disease Outcomes
Apolipoprotein A-I (ApoA-I) is a target of IgG autoantibody induction in patients, but the role of these antibodies has not been fully elucidated. Previous research has characteriz...
Abstract 331: Anti-apolipoprotein A-I Antibody Profile Correlates with Cardiovascular Disease Outcomes
Abstract 331: Anti-apolipoprotein A-I Antibody Profile Correlates with Cardiovascular Disease Outcomes
Apolipoprotein A-I (ApoA-I) is a target of IgG autoantibody induction in patients, but the role of these antibodies has not been fully elucidated. Anti-ApoA-I IgG antibodies target...
Differential distribution of plasma apoA-I and apoB levels and clinical significance of apoB/apoA-I ratio in ischemic stroke subtypes
Differential distribution of plasma apoA-I and apoB levels and clinical significance of apoB/apoA-I ratio in ischemic stroke subtypes
Background and purposeIschemic stroke (IS) is classified into clinical subtypes and likely influenced by various lipid components. Nevertheless, the roles of apolipoprotein A-I (ap...
Levels of apoA-I, apoA-IV and SAA both in plasma and high-density lipoprotein in coronary heart disease patients
Levels of apoA-I, apoA-IV and SAA both in plasma and high-density lipoprotein in coronary heart disease patients
Background In recent years, studies have shown that elevated level of HDL may not have a cardiovascular protective effect. Our study is to focus on the protein co...
Abstract 116: Mechanism of ApoA-I Attenuation of Inflammation Associated with Atherosclerosis
Abstract 116: Mechanism of ApoA-I Attenuation of Inflammation Associated with Atherosclerosis
Cytokines/chemokines and their receptors have been an important consideration when investigating the role of inflammation in atherosclerosis. In humans and animal models, monocyte ...
Abstract 408: Essential Domain Transition Involving Central Helical Repeats Prevent Lipid-Free ApoA-I from Acquiring Lipid
Abstract 408: Essential Domain Transition Involving Central Helical Repeats Prevent Lipid-Free ApoA-I from Acquiring Lipid
Plasma high density lipoprotein (HDL) concentration is negatively correlated with the occurrence of coronary heart disease in the human population. Because apoA-I is the main prote...

Back to Top